info:eu-repo/semantics/article
Detailed modeling of the video signal and optimal readout of charge-coupled devices
Fecha
2020-07-07Registro en:
Chierchie, Fernando; Fernández Moroni, Guillermo; Querejeta Simbeni, Pedro; Stefanazzi, Leandro; Paolini, Eduardo Emilio; et al.; Detailed modeling of the video signal and optimal readout of charge-coupled devices; John Wiley & Sons Ltd; International Journal Of Circuit Theory And Applications; 48; 7; 7-7-2020; 1001-1016
0098-9886
CONICET Digital
CONICET
Autor
Chierchie, Fernando
Fernández Moroni, Guillermo
Querejeta Simbeni, Pedro
Stefanazzi, Leandro
Paolini, Eduardo Emilio
Sofo Haro, Miguel Francisco
Cancelo, Gustavo Indalecio
Estrada, Juan
Resumen
This article provides a practical design methodology to calculate an optimal filter for noise reduction in the readout of charge‐coupled devices (CCDs) taking into account the charge transfer and feedthroughs due to capacitive coupling in the CCD. A detailed analysis of the dynamics of the video signal and charge transfer is presented, including the circuital modeling of the output stage of the CCD and the dynamics of the electronics in the video chain before the analog‐to‐digital (AD) converter. This model is used to compute an optimal filter that minimizes the variance of the pixel noise and uses the samples of the charge transfer, before the charge is fully settled. This is necessary to enhance the performance of previous results that also use optimal filters but do not use the transition samples, while also reducing the pixel readout time, resulting in faster readouts. As a proof of concept for the optimal filter, we present novel experimental results using a Skipper CCD, which has a floating sense node that allows to measure the charge packet an arbitrary number of times. However, this technique can be applied to any CCD that has a readout system that digitally samples the video signal.